Material packing integrated device

By introducing a bag clamp and a reinforced structure with adhesive coating into the integrated material packaging equipment, combined with a hot melt pressure plate and a crushing component in the mixing cylinder, the problems of material leakage and uneven mixing are solved, the wear resistance and production efficiency of the equipment are improved, and the packaging needs of customized compound materials are met.

CN121590838BActive Publication Date: 2026-04-10HEBEI DETAI AUTOMATION PACKAGING EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2026-01-28
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing material packaging equipment lacks a secondary reinforcement structure. The needle holes and gaps in the seams can easily lead to material leakage. The bottom of the bag has poor abrasion resistance and is easily damaged. Furthermore, the lack of a dedicated crushing structure makes it difficult to handle materials that are prone to clumping. It is also impossible to achieve mixed filling of multi-component materials, resulting in poor safety and quality of material storage and transportation.

Method used

The bottom of the packaging bag is reinforced with adhesive by using a bag clamp, drive assembly, and reinforcement assembly. A dense and wear-resistant adhesive layer is formed by combining it with a hot melt pressure plate. A mixing cylinder and a mixing and crushing assembly are set up to realize the conveying and crushing of multi-component materials, ensuring that the materials are mixed evenly.

Benefits of technology

It improves the wear resistance and impact resistance of the bottom of the packaging bag, prevents leakage and damage, ensures uniform mixing of materials, improves production efficiency and packaging quality stability, and adapts to the needs of packaging bags of various materials.

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Abstract

The present application relates to material packaging equipment technical field, specifically to a kind of material packing integrated equipment, including support seat, rack fixed in the top of support seat and bag gripper fixed in the top of rack one side, through the setting of bag gripper, drive assembly and reinforcing assembly, the material packing integrated equipment of present can accurately apply reinforcing glue to the bottom of packaging bag when using, cooperate hot air rapid drying to form dense wear-resistant glue layer, efficiently block bag bottom seam sewing pinhole and seam gap, then utilize hot-melt pressing plate to carry out secondary hot-melt pressing at the more bottom end position of bag bottom sewing line, form a dense hot-melt pressing layer sealing structure, realize the secondary reinforcement of bag bottom.The design greatly improves the wear resistance and impact resistance and pressure resistance of bag bottom, effectively avoids the problem of bag bottom damage and leakage caused by material scratching and long-term stacking, adapts to packaging bags of various materials, significantly reduces the loss rate in the process of material storage and transportation, improves the stability and reliability of packaging operation.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of material packaging equipment, in particular to a material packaging integrated equipment. BACKGROUND

[0002] The existing material packaging integrated equipment is composed of a rack, a bag clamping device, a bag opening mechanism, a material filling mechanism, a sealing mechanism, a weighing mechanism and a conveying mechanism. The rack provides installation support for each component, the bag clamping device is responsible for firmly clamping the packaging bag, the bag opening mechanism cooperates to open the bag opening to facilitate filling, the material filling mechanism is connected with the material cylinder to realize the falling and filling of the material, the sealing mechanism seals the bag opening after filling, the weighing mechanism is correspondingly arranged below the material filling station to monitor the weight of the material in the bag in real time and control the start and stop of material filling, and the conveying mechanism transfers the material bag with sealed opening to the subsequent process. The working principle is as follows: the packaging bag is placed into the bag clamping device by manual or bag feeding mechanism, and after being clamped and fixed by the bag clamping device, it is moved to the corresponding station, the bag opening mechanism opens the bag opening at the same time, the material filling mechanism starts to fill the bag, the weighing mechanism stops filling when the weight reaches the standard, the sealing mechanism completes the sealing of the bag opening, and finally the packaging material bag is sent away by the conveying mechanism, realizing the continuous operation of bag clamping, material filling, weighing, sealing and conveying.

[0003] However, the existing material packaging integrated equipment has obvious shortcomings in actual operation. The bottom of the packaging bag only relies on the initial sewing process, lacks a targeted secondary reinforcing structure, and the needle holes and seam gaps formed by sewing are easy to cause material leakage. In addition, the bag bottom has poor wear resistance and is easy to be damaged and penetrated after being scraped, stacked and collided by the material, greatly affecting the safety of material storage and transportation. At the same time, the existing equipment has no special crushing structure, and it is difficult to effectively process the material that is easy to clump. In addition, the equipment does not have the function of mixing and filling multi-component materials, and manual mixing is required before the production of composite materials. The operation is complicated and easy to cause uneven material stratification and mixing, resulting in poor consistency of the components in the bag, which cannot meet the production needs of customized composite materials, and the overall operation efficiency and material packaging quality are restricted. SUMMARY

[0004] The present application aims to provide a material packaging integrated equipment to solve the above-mentioned problems of the existing material packaging integrated equipment, which has obvious shortcomings. The bottom of the packaging bag only relies on the initial sewing process, lacks a secondary reinforcing structure, and the needle holes and seam gaps formed by sewing are easy to cause material leakage. In addition, the bag bottom has poor wear resistance and is easy to be damaged and penetrated after being scraped, stacked and collided by the material, greatly affecting the safety of material storage and transportation. At the same time, the existing equipment has no special crushing structure, and it is difficult to effectively process the material that is easy to clump. In addition, the equipment does not have the function of mixing and filling multi-component materials, and manual mixing is required before the production of composite materials. The operation is complicated and easy to cause uneven material stratification and mixing, resulting in poor consistency of the components in the bag, which cannot meet the production needs of customized composite materials, and the overall operation efficiency and material packaging quality are restricted.

[0005] In order to achieve the above object, the present application provides the following technical scheme: a material packaging integrated device, comprising a support base, a rack fixed at the top end of the support base, and a bag clamping device fixed at one side of the top end of the rack, the top end surface of the support base corresponding to the bag clamping device is symmetrically fixed with two limiting slide rods through supports, a driving assembly is arranged between the two limiting slide rods, two mounting frames are symmetrically and slidably arranged on the two limiting slide rods, and a reinforcing assembly is arranged at the top end of each mounting frame; the reinforcing assembly comprises a mounting plate, a glue applying roller, and a hot melting pressing plate, the mounting plate is slidably and clampedly arranged in the mounting frame, the glue applying roller is arranged at the middle of one side of the mounting plate, the hot melting pressing plate is arranged at the outside of one side of the mounting plate at the bottom end of the glue applying roller, a mixing cylinder is fixedly arranged at the position close to the middle of the rack, a mixing and crushing assembly is arranged in the mixing cylinder, and a bag clamping and opening mechanism is arranged at the bottom end of the mixing cylinder, which is used for clamping and opening the packaging bag; a weighing mechanism is arranged at the top end outside of the support base close to the bag clamping and opening mechanism, which is used for weighing the packaging bag after loading; and a conveying mechanism is arranged at one side of the rack away from the bag clamping device, which is used for conveying the packaged packaging bag.

[0006] Further, a control box is arranged at the top end of one side of the rack, the driving assembly comprises a stepping motor and a rotating rod, the stepping motor is fixedly arranged at the top end outside of the support base at the middle position of the two limiting slide rods, and the middle of the rotating rod is fixedly arranged at the top end of the output end of the stepping motor.

[0007] Further, two connecting rods are rotatably connected to the two ends of the rotating rod, and one end of each connecting rod away from the rotating rod is rotatably connected to the bottom end of the corresponding mounting frame.

[0008] Further, an electric telescopic rod is vertically fixedly arranged at the top end of each mounting frame, the output end of the electric telescopic rod is fixedly connected to one side outside of the mounting plate, two limiting frames are symmetrically fixedly arranged outside the two ends of the mounting plate, a sliding block is slidably and clampedly arranged in each limiting frame, and the two ends of the glue applying roller are rotatably arranged in the mounting holes of the corresponding sliding blocks.

[0009] Further, a resisting spring is fixedly arranged at one side of the sliding block, one end of the resisting spring away from the sliding block is fixedly embedded in the inner wall of one side of the limiting frame, a glue supply pump is fixedly arranged at one side outside of the mounting plate, the output end of the glue supply pump is fixedly connected with a hose, a rotating sealing joint is rotatably connected to one end of the hose away from the glue supply pump, one end of the rotating sealing joint away from the hose is fixedly connected with one end of the glue applying roller, and the input end of the glue supply pump is fixedly connected with a spring tube.

[0010] Further, the installation plate is externally fixed with a cavity cover on one side of the top end of the glue roller through a support, the inside of the installation plate is fixedly penetrated with a wind deflector, the inside of the wind deflector is fixed with a fan through a support, the output end of the wind deflector is fixedly penetrated with the inside of one side of the cavity cover, the inside of the cavity cover is fixed with an electric heating pipe, and a plurality of air blowing heads are fixedly penetrated on the side of the cavity cover away from the wind deflector at equal intervals.

[0011] Further, the inside of both sides of the installation plate is symmetrically fixedly penetrated with two guide rods, one end of each of the two guide rods is fixedly installed on the outside of the hot melt pressing plate, and the outside of each of the two guide rods is sleeved with a tension spring, and both ends of the tension spring are fixedly installed on the outside of one side of the hot melt pressing plate and the outside of one side of the installation plate.

[0012] Further, a through hole is formed in the middle of the bottom end of the installation plate, a resisting rod is arranged in the through hole, one end of the resisting rod is fixedly installed on the outside of one side of the hot melt pressing plate, the other end of the resisting rod is fixedly installed with a first arc-shaped resisting block, the bottom end of the first arc-shaped resisting block is provided with a second arc-shaped resisting block, and the second arc-shaped resisting block is fixedly installed in the inside of the mounting bracket through a support.

[0013] Further, the mixing and crushing assembly comprises a plurality of material guide pipes and a driving motor, the plurality of material guide pipes are fixedly installed in the inside of the mixing material cylinder near the top end at equal angles, the driving motor is fixedly installed on the middle of the top end of the mixing material cylinder, the top end of each of the plurality of material guide pipes is communicated and fixed with a material storage bin, and each of the plurality of material guide pipes is communicated and fixed with an electric valve on the pipeline.

[0014] Further, a rotating shaft is vertically arranged in the middle of the mixing material cylinder, one end of the rotating shaft is coaxially fixedly connected with the output end of the driving motor, a spiral conveying piece is fixedly sleeved with the rotating shaft at a position corresponding to the output end of each of the plurality of material guide pipes, and a plurality of crushing rods are fixedly arranged around the rotating shaft at equal angles at a position below the bottom end of the spiral conveying piece.

[0015] Compared with the prior art, the present application has the following advantages:

[0016] 1. Through the setting of the bag clamping device, the driving assembly and the reinforcing assembly, the material packaging integrated device can accurately apply reinforcing glue to the bottom of the packaging bag during use, cooperate with the hot air rapid drying to form a dense wear-resistant glue layer, efficiently seal the needle hole and seam gap of the bag bottom, and then use the hot melt pressing plate to perform secondary hot melt pressing at the lower end position of the bag bottom sewing line to form a dense hot melt pressing layer sealing structure, realizing the secondary reinforcement of the bag bottom. The design greatly improves the wear resistance and impact resistance and stacking resistance of the bag bottom, effectively avoids the bag bottom damage and leakage problem caused by material scratching and long-term stacking, adapts to packaging bags of various materials, significantly reduces the loss rate during material storage and transportation, and improves the stability and reliability of the packaging operation.

[0017] 2. Through the setting of the mixing cylinder and the mixing and crushing assembly, the material packaging integrated device can connect the conveying paths of multiple components of the material, control the discharge and mixing of different materials, avoid the problem of uneven components caused by material stratification, and realize the integrated operation of crushing, mixing and filling, effectively improve the production efficiency, meet the packaging needs of customized composite materials, and ensure the quality stability of the final product. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is the overall structure schematic diagram of the present application;

[0019] Figure 2 is the three-dimensional structure schematic diagram of the support seat and the mounting frame of the present application;

[0020] Figure 3 is the three-dimensional structure schematic diagram of the limiting sliding rod and the mounting frame of the present application;

[0021] Figure 4 is the three-dimensional structure schematic diagram of the limiting sliding rod and the mounting frame of the present application; Figure 3 is the enlarged structure schematic diagram of A in the present application;

[0022] Figure 5 is the top view structure schematic diagram of the rotating rod and the connecting rod of the present application;

[0023] Figure 6 is the local cross-sectional three-dimensional structure schematic diagram of the cavity cover and the electric heating pipe of the present application;

[0024] Figure 7 is the local cross-sectional three-dimensional structure schematic diagram of the air guide cover and the fan of the present application;

[0025] Figure 8 is the demonstration schematic diagram of the two glue rollers rolling and gluing the bottom of the packaging bag of the present application;

[0026] Figure 9It is a partial sectional view of the structure of the mixing barrel and the rotating shaft of the application.

[0027] Figure 10 It is a partial sectional view of the structure of the material guide pipe and the electric valve of the application.

[0028] In the drawings, the components represented by each reference numeral are listed as follows: 1, support base; 2, rack; 3, control box; 4, bag clamping device; 5, stepping motor; 6, limiting slide rod; 7, mounting bracket; 8, rotating rod; 9, connecting rod; 10, mounting plate; 11, electric telescopic rod; 12, glue roller; 13, limiting frame; 14, sliding block; 15, abutting spring; 16, glue supply pump; 17, hose; 18, rotating sealing joint; 19, spring tube; 20, cavity cover; 21, wind cover; 22, fan; 23, electric heating pipe; 24, air blowing head; 25, hot melt pressing plate; 26, guide rod; 27, tension spring; 28, through hole; 29, abutting rod; 30, first arc-shaped abutting block; 31, second arc-shaped abutting block; 32, mixing barrel; 33, material guide pipe; 34, storage bin; 35, electric valve; 36, driving motor; 37, rotating shaft; 38, spiral conveying piece; 39, crushing rod; 40, bag opening clamping mechanism; 41, weighing mechanism; 42, conveying mechanism. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0030] Embodiment one: please refer to Figure 1 - Figure 8 A material packaging integrated device, comprising a support base 1, a rack 2 fixed at the top end of the support base 1, and a bag clamping device 4 fixed at one side of the top end of the rack 2, the top end surface of the support base 1 corresponding to the bag clamping device 4 is symmetrically fixed with two limiting slide rods 6 through supports, a driving assembly is arranged between the two limiting slide rods 6, two mounting brackets 7 are symmetrically and slidably arranged on the two limiting slide rods 6, and a reinforcing assembly is arranged at the top end inside of each of the two mounting brackets 7.

[0031] The top end side outside of the rack 2 is externally provided with a control box 3, and the driving assembly comprises a stepping motor 5 and a rotating rod 8.

[0032] The two ends of the rotating rod 8 are rotatably connected with two connecting rods 9, and the ends, away from the rotating rod 8, of the two connecting rods 9 are rotatably connected with the bottom ends of the corresponding one of the mounting frames 7.

[0033] The top end of each mounting frame 7 is vertically fixedly provided with an electric telescopic rod 11, and the output end of the electric telescopic rod 11 is fixedly connected with one side outside of the mounting plate 10.

[0034] One side of the sliding block 14 is fixedly provided with a contact spring 15, and the end, away from the sliding block 14, of the contact spring 15 is fixedly embedded on one side inner wall of the limiting frame 13.

[0035] The mounting plate 10 is externally provided, at one side of the top end of the glue applying roller 12, with a cavity cover 20 through a support, and the mounting plate 10 is internally provided with a wind deflector 21 which is internally provided with a fan 22 through a support.

[0036] The two sides of the mounting plate 10 are symmetrically internally provided with two guide rods 26 which are slidably installed, and the one ends of the two guide rods 26 are fixedly installed on the outside of the hot melting pressing plate 25.

[0037] A through hole 28 is formed in the middle of the bottom end of the mounting plate 10, and a resisting rod 29 is arranged in the through hole 28, one end of the resisting rod 29 is fixedly installed with one side of the hot melt pressing plate 25, and the other end of the resisting rod 29 is fixedly installed with a first arc-shaped resisting block 30, and the bottom end of the first arc-shaped resisting block 30 is provided with a second arc-shaped resisting block 31, and the second arc-shaped resisting block 31 is fixedly installed in the inside of the mounting frame 7 through a support.

[0038] In the embodiment, the working principle of the material packaging integrated device is as follows: the top end of the packaging bag is placed into the bag clamping device 4 by artificial or bag feeding mechanism, the bag clamping device 4 stably clamps the top end of the packaging bag, realizes accurate positioning of the upper part of the bag body, provides a stable reference for subsequent bottom processing, and avoids processing deviation caused by bag body deviation in the operation process. Then the control box 3 starts the stepping motor 5, the stepping motor 5 drives the rotating rod 8 fixedly arranged at the output end to rotate, the rotating rod 8 synchronously pulls the two mounting frames 7 through the connecting rods 9 rotatably connected at both ends, so that the two mounting frames 7 stably slide along the limiting slide rods 6, the limiting slide rods 6 effectively limit the sliding track of the mounting frames 7 to prevent deviation, until the glue coating rollers 12 on the two mounting frames 7 respectively tightly fit the two sides of the bottom of the packaging bag, and the clamping and positioning of the bag bottom are completed, laying a solid foundation for the gluing and hot melt pressing operation.

[0039] When the operation enters the gluing process, the control box 3 synchronously starts the electric telescopic rod 11, the glue supply pump 16, the fan 22 and the electric heating pipe 23. The electric telescopic rod 11 pushes the mounting plate 10 to move downward at a constant speed along the mounting frame 7, the glue supply pump 16 draws the reinforced glue through the spring pipe 19, and the glue is delivered to the rotating sealing joint 18 through the hose 17. The rotating sealing joint 18 can stably deliver the glue when the glue coating roller 12 rotates, so as to avoid glue leakage, and finally the glue is introduced into the inside of the glue coating roller 12 and penetrates to the surface. The glue coating roller 12 rotates synchronously under the action of the friction force of the bag bottom, cooperates with the downward movement of the mounting plate 10, and realizes uniform rolling gluing on both sides of the bag bottom; at the same time, the resisting spring 15 in the limiting frame 13 applies elastic force to the sliding block 14, pushes the sliding block 14 to drive the glue coating roller 12 to always tightly fit the surface of the bag bottom, so as to ensure that the glue layer is uniformly and densely coated, there is no missed coating and thin coating area, and the instantaneous pressure during gluing is buffered to prevent the bag body from being damaged by pressure, and the adhesion of the glue layer and the bag bottom is greatly improved.

[0040] In the gluing process, the fan 22 sucks external air into the air guide cover 21, the air is heated by the electric heating pipe 23 in the air cavity cover 20 to form hot air, and the hot air is uniformly blown to the bag bottom area just coated with glue through a plurality of air blowing heads 24, so as to realize rapid drying and curing of the glue. After the glue layer is rapidly dried and cured by the hot air, not only can it effectively resist the scratching of hard materials such as hard blocks and debris on the bag bottom during the filling process, avoiding the formation of hidden scratches on the bag bottom, but also can play a multiple protection role in the subsequent handling, conveying and stacking processes. When the packaging bag is transferred on the conveying belt and collides with the pallet and the ground during the forklift handling process, the glue layer can directly bear the impact force and friction force to prevent the bag bottom from being damaged and perforated; in the warehouse stacking link, the bottom packaging bag needs to bear the superimposed pressure of dozens of bags of fertilizer on the upper layers, and the glue layer can significantly enhance the compression resistance of the bag bottom to avoid the problem of seam cracking and substrate damage due to long-term pressure on the bag bottom, greatly improving the load limit of the bag bottom. At the same time, the glue layer can completely block the pinholes and seam gaps left by the initial sewing process, even if the particle size of the powder material is small, it cannot leak from the gap, solving the leakage problem of traditional sewn bags. And it can resist the moisture erosion caused by long-term contact of the bag bottom with the ground, avoid the problem of substrate dampening and seam corrosion caused by ground moisture return and rainwater splashing during storage, completely meet the needs of long-term storage and transportation of materials, adapt to packaging bags of various materials, significantly reduce the loss rate of materials during storage and transportation, and improve the overall stability and reliability of the packaging operation.

[0041] At the same time, the bag clamping device 4 stably clamps the top end of the packaging bag, the mounting plate 10 drives the glue roller 12 to move downward at a uniform speed, and the glue roller 12 is combined with the top end fixing force through the friction force of the bag bottom to pull the packaging bag longitudinally and completely eliminate the wrinkles on the bag bottom, avoiding problems such as uneven gluing and loose hot melt pressing caused by wrinkles, and ensuring the quality of subsequent processing.

[0042] During the downward movement of the mounting plate 10, the hot melt pressing plate 25 completes the preheating preparation at the same time, and moves towards the bag bottom at a uniform speed with the mounting plate 10. When the mounting plate 10 moves downward to the preset position, the first arc-shaped abutting block 30 at the end of the abutting rod 29 abuts against the second arc-shaped abutting block 31 on the mounting frame 7, the abutting force pushes the abutting rod 29 to drive the hot melt pressing plate 25 to move towards the bag bottom, the guide rod 26 slides along the mounting plate 10 to play a precise guiding role, and the tension spring 27 is stretched and provides a reverse elastic pressure, so that the hot melt pressing plate 25 stably and uniformly presses the hot melt on the lower end position of the bag bottom sewing line to form a dense hot melt pressing layer sealing structure, realizing the secondary reinforcement of the bag bottom. The hot melt pressing plates 25 on the two mounting frames 7 act synchronously to ensure uniform pressing force and further improve the impact resistance and stacking pressure resistance of the bag bottom, effectively avoiding damage and leakage of the bag bottom during long-term storage and transportation. The whole operation is continuous and automatic, without manual intervention, which significantly improves the stability and reliability of the packaging process and meets the bottom reinforcement needs of packaging bags of various materials.

[0043] It should be noted that the glue material used in the gluing process of the device is a hot melt type polypropylene anti-seepage wear-resistant glue which is maturely applied in the existing packaging industry. In some working conditions, it can be replaced by a two-component polyurethane wear-resistant glue. Both types of glue are commercialized materials that do not need to be customized and developed.

[0044] Embodiment Two: Please refer to Figure 1 、 Figure 9 and Figure 10 , which further illustrates Embodiment One. The mixing cylinder 32 is fixedly installed near the middle part of the rack 2. The mixing cylinder 32 is internally provided with a mixing and crushing assembly. The bottom end of the mixing cylinder 32 is installed with a bag clamping and opening mechanism 40 for clamping and opening the packaging bag. The supporting seat 1 is installed with a weighing mechanism 41 near the top end of the bag clamping and opening mechanism 40 for weighing the packaging bag after loading. The rack 2 is installed with a conveying mechanism 42 away from the bag clamping device 4 for conveying the packaged packaging bag.

[0045] The mixing and crushing assembly includes a plurality of guide pipes 33 and a driving motor 36. The plurality of guide pipes 33 are fixedly installed at equal angles and pass through the inside of the mixing cylinder 32 near the top end. The driving motor 36 is fixedly installed at the top end of the mixing cylinder 32. The top end of each guide pipe 33 is communicated and fixed with a storage bin 34. Each guide pipe 33 is communicated and fixed with an electric valve 35.

[0046] The mixing cylinder 32 is vertically provided with a rotating shaft 37 at the middle part. One end of the rotating shaft 37 is coaxially fixedly connected with the output end of the driving motor 36. The rotating shaft 37 is fixedly sleeved with a spiral conveying piece 38 corresponding to the position of the output end of the plurality of guide pipes 33. The rotating shaft 37 is fixedly sleeved with a plurality of crushing rods 39 at equal angles at the position of the bottom end of the spiral conveying piece 38.

[0047] In this embodiment, after the bag bottom gluing, hot melt pressing and reinforcing operations of Embodiment One are completed, the control box 3 controls the stepping motor 5 to reverse, drives the fixed rotating rod 8 at the output end to rotate reversely, synchronously pulls the two mounting frames 7 through the connecting rods 9 rotatably connected at both ends, and makes the two mounting frames 7 reversely and smoothly slide along the limiting slide rod 6 to loosen the clamping of the bottom of the packaging bag. At the same time, the control box 3 synchronously closes the glue pump 16, the fan 22 and the electric heating pipe 23. The electric telescopic rod 11 drives the mounting plate 10 to move upward along the mounting frame 7 to reset, the stretching spring 27 drives the hot melt pressing plate 25 to reset, the first arc-shaped abutting block 30 and the second arc-shaped abutting block 31 are separated from the abutting state, and the reinforcing assembly returns to the initial position as a whole, ready for the bottom processing of the next group of packaging bags.

[0048] Subsequently, the bag holder 4 keeps a firm grip on the top end of the packaging bag, and drives the bottom-reinforced packaging bag to the position directly below the mixing cylinder 32, ensuring that the bag opening is aligned with the bottom end of the mixing cylinder 32. At this time, the clamping and opening mechanism 40 at the bottom end of the mixing cylinder 32 is activated to clamp and fix the bag opening again, and to accurately open the bag opening to prevent material leakage during filling, providing a stable bag opening reference for subsequent mixing and filling operations. Combined with the bottom-reinforced packaging bag, a complete packaging protection system is formed, which can effectively withstand the impact of various materials during filling.

[0049] According to the component requirements of the composite material to be packaged, the control box 3 controls the opening of the electric valve 35 at the bottom of the corresponding material guide pipe 33. If multiple-component material mixing packaging is required, multiple electric valves 35 of the corresponding material guide pipes 33 can be opened simultaneously to achieve on-demand quantitative discharge of different materials without the need for manual pre-mixing and transfer, solving the problem of traditional manual mixing being complicated and inefficient.

[0050] Then the control box 3 starts the drive motor 36, which drives the rotating shaft 37 in the middle of the mixing cylinder 32 to rotate, and the spiral conveying piece 38 at the corresponding position of the output end of the material guide pipe 33 on the rotating shaft 37 rotates synchronously. The materials discharged from the material guide pipes 33 fall into the mixing cylinder 32 synchronously, and the spiral conveying piece 38 fully mixes the multi-component materials during the downward conveying of the materials, ensuring the uniformity of the final bagged materials and meeting the packaging requirements of customized composite materials.

[0051] When the materials are conveyed by the spiral conveying piece 38 to the breaking rod 39 area at the bottom end of the rotating shaft 37, the rotating breaking rod 39 breaks the agglomerates in the materials, dispersing the agglomerates into uniformly sized materials, which not only prevents the agglomerated materials from blocking the discharge port at the bottom end of the mixing cylinder 32, but also allows the broken materials to mix more fully with other components, further improving the uniformity of the materials and ensuring smooth filling, which meets the packaging requirements of materials prone to agglomeration.

[0052] The broken and mixed materials fall smoothly into the opened packaging bag through the discharge port at the bottom end of the mixing cylinder 32. At this time, the weighing mechanism 41 on the support seat 1 accurately monitors the total weight of the packaging bag and the materials inside in real time. When the weight reaches the preset standard, the weighing mechanism 41 immediately sends a signal to the control box 3, which quickly closes all electric valves 35 and shuts down the drive motor 36, stopping the filling process and effectively preventing overfilling or underfilling, ensuring the consistency of the weight of each bag of materials and improving the quality of product packaging.

[0053] After the filling is completed, the bag opening clamping mechanism 40 releases the clamping of the bag opening, and the bag clamping device 4 drives the filled packaging bag to move above the conveying mechanism 42 and then releases the clamping. The conveying mechanism 42 is started to transfer the material bag completed with the bottom reinforcement, mixing and filling to the subsequent storage, sealing or stacking station, realizing the integrated and automated packaging operation from the bag bottom reinforcement, multi-component mixing, lump breaking, precise filling to conveying, and significantly improving the stability and reliability of the material packaging.

[0054] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0055] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A material packaging integrated device, comprising a support base (1), a machine frame (2) fixed on the top end of the support base (1), and a bag clamping device (4) fixed on one side of the top end of the machine frame (2), characterized in that: The support seat (1) corresponds to the top surface below the bag clamping device (4), and two limiting slide rods (6) are symmetrically and fixedly installed on the support seat (1) through supports, a driving assembly is arranged between the two limiting slide rods (6), two mounting frames (7) are symmetrically and slidably arranged on the two limiting slide rods (6), and a reinforcing assembly is arranged at the top end of each of the two mounting frames (7). The reinforcing assembly comprises an installation plate (10), a glue roller (12) and a hot melting pressing plate (25), the installation plate (10) is slidably and clampedly installed in the mounting frame (7), the glue roller (12) is arranged at the middle of one side of the installation plate (10), the hot melting pressing plate (25) is arranged at the outside of one side of the installation plate (10) at the bottom end of the glue roller (12), a mixing cylinder (32) is fixedly installed at the position close to the middle of the rack (2), a mixing and crushing assembly is arranged in the mixing cylinder (32), a bag clamping and opening mechanism (40) is installed at the bottom end of the mixing cylinder (32) and used for clamping and opening a packaging bag, a weighing mechanism (41) is installed at the top end of the support seat (1) close to the bag clamping and opening mechanism (40) and used for weighing the packaging bag after loading, and a conveying mechanism (42) is installed on the side of the rack (2) away from the bag clamping device (4) and used for conveying the packaged packaging bag. An electric telescopic rod (11) is vertically and fixedly installed at the top end of each mounting frame (7), and the output end of the electric telescopic rod (11) is fixedly connected with the outside of one side of the installation plate (10). A through hole (28) is formed in the bottom end of the installation plate (10), a resisting rod (29) is arranged in the through hole (28), one end of the resisting rod (29) is fixedly installed with the outside of one side of the hot melting pressing plate (25), the other end of the resisting rod (29) is fixedly installed with a first arc-shaped resisting block (30), a second arc-shaped resisting block (31) is arranged at the bottom end of the first arc-shaped resisting block (30), and the second arc-shaped resisting block (31) is fixedly installed in the mounting frame (7) through a support.

2. The integrated material baling apparatus of claim 1, wherein: A control box (3) is installed at the top end of one side of the rack (2), the driving assembly comprises a stepping motor (5) and a rotating rod (8), the stepping motor (5) is fixedly installed at the top end of the support seat (1) close to the middle position of the two limiting slide rods (6), and the middle part of the rotating rod (8) is fixedly installed at the top end of the output end of the stepping motor (5).

3. The integrated material baling apparatus of claim 2, wherein: Two connecting rods (9) are rotatably connected to the two ends of the rotating rod (8), and one end of each of the two connecting rods (9) away from the rotating rod (8) is rotatably connected with the bottom end of the mounting frame (7) on the corresponding side.

4. The integrated material baling apparatus of claim 1, wherein: Two limiting frames (13) are symmetrically and fixedly installed at the outside of the two ends of the installation plate (12), a sliding block (14) is slidably and clampedly installed in each of the two limiting frames (13), and the two ends of the glue roller (12) are rotatably installed in the mounting holes of the sliding blocks (14) on the corresponding sides.

5. The integrated material baling apparatus of claim 4, wherein: One side of the slider (14) is fixedly installed with a resisting spring (15), one end of the resisting spring (15) away from the slider (14) is fixedly embedded on the inner wall of one side of the limiting frame (13), one side of the mounting plate (10) is fixedly installed with a glue supply pump (16) outside, the output end of the glue supply pump (16) is fixedly communicated with a hose (17), one end of the hose (17) away from the glue supply pump (16) is rotatably connected with a rotary sealing joint (18), one end of the rotary sealing joint (18) away from the hose (17) is fixedly communicated with one end of the glue roller (12), the input end of the glue supply pump (16) is fixedly communicated with a spring tube (19).

6. The integrated material baling apparatus of claim 1, wherein: The mounting plate (10) is fixedly installed with a cavity cover (20) outside one side of the top end of the glue roller (12) through a support, the mounting plate (10) is fixedly penetrated with a wind scoop (21) inside, the wind scoop (21) is fixedly provided with a fan (22) through a support inside, the output end of the wind scoop (21) is fixedly penetrated with one side of the cavity cover (20) inside, the cavity cover (20) is fixedly provided with an electric heating tube (23) inside, a plurality of air blowing heads (24) are fixedly penetrated with the cavity cover (20) at equal intervals on one side away from the wind scoop (21).

7. The integrated material baling apparatus of claim 1, wherein: The two sides of the mounting plate (10) are symmetrically penetrated with two guide rods (26) inside and slidably installed, one end of the two guide rods (26) is fixedly installed outside the hot melting pressing plate (25), the two guide rods (26) are both sleeved with a tensile spring (27) outside, the two ends of the tensile spring (27) are respectively fixedly installed outside one side of the hot melting pressing plate (25) and one side of the mounting plate (10).

8. The integrated material baling apparatus of claim 1, wherein: The mixing and crushing assembly comprises a plurality of guide pipes (33) and a driving motor (36), the plurality of guide pipes (33) are fixedly penetrated and installed at equal angles inside the mixing barrel (32) near the top end, the driving motor (36) is fixedly installed at the middle of the top end of the mixing barrel (32), the top end of the plurality of guide pipes (33) is communicated and fixed with a storage bin (34), and the pipeline of the plurality of guide pipes (33) is communicated and fixed with an electric valve (35).

9. The integrated material baling apparatus of claim 8, wherein: The middle of the mixing barrel (32) is vertically provided with a rotating shaft (37), one end of the rotating shaft (37) is coaxially fixedly connected with the output end of the driving motor (36), the rotating shaft (37) is fixedly sleeved with a spiral conveying piece (38) corresponding to the positions of the output ends of the plurality of guide pipes (33), and the rotating shaft (37) is fixedly provided with a plurality of crushing rods (39) at equal angles around the bottom end of the spiral conveying piece (38).

Citation Information

Patent Citations

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